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propagation, low-energy switching, few-particle modulation of condensate nonlinearities, integrated polaritonic circuit functions, and coupling of polaritonic states with on-chip detection and readout
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polariton propagation, low-energy switching concepts, few-particle modulation of condensate nonlinearities, integrated polaritonic circuit functions, and coupling of polaritonic states to on-chip detection
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, and industrial production facilities. As part of this master’s thesis, you will investigate hybrid motion planning methods for real-time model predictive control in robotics, with a particular focus on
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photonic science and engineering. The faculty engages in fundamental and applied research and education in lasers, optical fibers, semiconductor and integrated photonic devices, nonlinear and quantum optics
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on developing the low-dimensional nanophotonics, focusing on the near-field, nonlinear and quantum optical properties of emerging low-dimensional materials. The researcher will work on a project focused on the
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project to conduct the research on understanding novel quantum photonic platforms, exploring their emerging applications such as quantum light sources, quantum emitters, and advanced functionalities
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and execute a range of complex scientific research in a core facility environment including planning and optimizing research, designing analysis algorithms, and providing training to researchers